Articles | Volume 12, issue 2
https://doi.org/10.5194/jsss-12-235-2023
https://doi.org/10.5194/jsss-12-235-2023
Regular research article
 | 
05 Oct 2023
Regular research article |  | 05 Oct 2023

Monitoring ammonia slip from large-scale selective catalytic reduction (SCR) systems in combined heat and power generation applications with field effect gas sensors

Lida Khajavizadeh and Mike Andersson

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Cited articles

Andersson, M., Ljung, P., Mattsson, M., Löfdahl, M., and Lloyd Spetz, A.: Investigations on the possibilities of a MISiCFET sensor system for OBD and combustion control utilizing different catalytic gate materials, Top. Catal., 30/31, 365–368, https://doi.org/10.1023/B:TOCA.0000029776.18603.74, 2004. 
Andersson, M., Pearce, R., and Lloyd Spetz, A.: New generation SiC based field effect transistor gas sensors, Sensor Actuat. B-Chem., 179, 95–106, https://doi.org/10.1016/j.snb.2012.12.059, 2013a. 
Andersson, M., Lloyd Spetz, A., and Pearce, R.: Recent trends in silicon carbide (SiC) and graphene-based gas sensors, in: Semiconductor gas sensors, edited by: Jaaniso, R. and Tan, O. K., Woodhead Publishing Series in Electronic and Optical Materials, Woodhead Publishing, 117–158, https://doi.org/10.1533/9780857098665.2.117, 2013b. 
Atkinson, R.: Atmospheric Chemistry of VOCs and NOx, Atmos. Environ., 34, 2063–2101, https://doi.org/10.1016/S1352-2310(99)00460-4, 2000. 
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Short summary
This study concerns development and evaluation of a high-temperature-resilient ammonia sensor tailored for ammonia slip monitoring to improve NOx and NH3 emission reduction from coal-fuelled, biomass-fuelled, heat and power plants. In particular, by tuning the gas-sensitive materials' nanostructure, the interference from carbon monoxide in the ammonia measurement could be markedly reduced, thus allowing more accurate ammonia monitoring in the flue gas from a real combined heat and power plant.